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In their report on hydrogen and ethanol production from glycerol, Ito et al. (2005) observed that E. aerogenes HU-101 produced 1.12 mol H2/mol-glycerol, which was 0.12 mol higher than the theoretical maximum.
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This average MFE is comparable to that found in A. thaliana (−59.5 kcal mol-1), higher than in the red alga Porphyra yezoensis (−41.7 kcal mol-1) and lower than in the monocots rice (−71.0 kcal mol-1) and wheat (−72.4 kcal mol-1) [ 22, 48].
~8.7 kb of sequence has been determined [EMBL: AM491333] having a G+C content of 72.6 mol%, notably higher than the 64 mol% determined for the rest of the virus genome and close to that reported for Hrr.
Still, the maximum productivity was found as 0.47 mol H2/(m3·h), significantly higher than our result with the smaller reactor volume.
The production yields of the ΔpfkA strain (H2, 1.03 mol mol−1 glucose and ethanol, 1.04 mol mol−1 glucose) were higher than those of the pfkA+ strain (H2, 0.69 mol mol−1 glucose and ethanol, 0.95 mol mol−1 glucose), but pyruvate excretion was not reduced.
The peak current density in cyclic voltammetry (CV) curves reaches 360 mA cm−2 in the solution with 0.5 mol L−1 methanol, much higher than that of Ni B/Ti electrode.
(Choi et al. 2003) demonstrated that the threonine-overproducing mutant of Alcaligenes sp. SH-69 synthesized P 3HB-co-3HV) with 3HV fraction of uP 3HB-co-3HV (3-fold higher than the P 3HB-co-3HVn) from glucose as the sole carbon source, without external amino acid supplementation.
It also exhibited a very high hydrogen production efficiency, higher than 4.5 mol H2 per mol of EtOH fed.
During this period, the inventory of sulfide oxidation intermediates ([S0] + [SO3 2−] + 2 × [S2O3 2−]), 0.098 mol S m−2, was slightly higher than the inventory of sulfide, 0.094 mol S m−2 (Table 2).
The solubilities of higher than 0.8 mol dm−3 of U VI) complexes and higher than 0.4 mol dm−3 of a U IV) complex were obtained in the solvents.
It is found that a hydrogen stream (dry basis) with purity higher than 99 mol %, carbon monoxide content 25 ppm and 0.95 mol kg−1 h−1 productivity of hydrogen can be produced under cyclic steady state operation.
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